JP2013017168A - Three-dimensional-spectacle safety structure - Google Patents

Three-dimensional-spectacle safety structure Download PDF

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Publication number
JP2013017168A
JP2013017168A JP2012134590A JP2012134590A JP2013017168A JP 2013017168 A JP2013017168 A JP 2013017168A JP 2012134590 A JP2012134590 A JP 2012134590A JP 2012134590 A JP2012134590 A JP 2012134590A JP 2013017168 A JP2013017168 A JP 2013017168A
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spectacle
pivot
glasses
safety structure
bearing
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Donggil Cai
東吉 蔡
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Hon Hai Precision Industry Co Ltd
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Hon Hai Precision Industry Co Ltd
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • G02C5/2218Resilient hinges
    • G02C5/2254Resilient hinges comprising elastic means other than coil spring
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • G02C5/146Side-members having special front end
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • G02C5/2209Pivot bearings and hinge bolts other than screws
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C2200/00Generic mechanical aspects applicable to one or more of the groups G02C1/00 - G02C5/00 and G02C9/00 - G02C13/00 and their subgroups
    • G02C2200/04Junctions between frame elements having a click function

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Ophthalmology & Optometry (AREA)
  • Optics & Photonics (AREA)
  • Eyeglasses (AREA)
  • Testing, Inspecting, Measuring Of Stereoscopic Televisions And Televisions (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a 3D-spectacle safety structure which prevents breakage of temples.SOLUTION: The 3D spectacle safety structure comprises a spectacle frame and a pair of temples. Respectively one pivots are installed in both sides of the spectacle frame, the two pivots being axially connected to the two temples. In rear of the pivots of the spectacle frame, supporting points are installed. At one end of each temple, a pivot portion is installed. The pivot point portion is provided with a bearing axially connected to the pivot. The bearing is provided with an aperture having a width smaller than the diameter of the pivot, and has elasticity. The position of the supporting point corresponds to the position of the temple.

Description

本発明は、3D立体映画を見るために用いられる3D眼鏡における安全構造に関するものである。   The present invention relates to a safety structure in 3D glasses used for viewing a 3D stereoscopic movie.

3次元映像による3D立体映画が公開されてから、3D立体映画を見るための専門の3D眼鏡が使用されている。3D眼鏡の眼鏡フレーム及び眼鏡脚部は、熱可塑性のプラスチック材料からなり、このような材料は硬質であり脆くて割れる危険性がある。眼鏡脚部は眼鏡フレームの両端で折り畳み可能となるようにヒンジ結合される。通常、使用する場合、眼鏡フレームの両側の眼鏡脚部を外側に向かって展開して、両側の眼鏡脚部が頭部の前方部を通過して耳に掛けるようにする。しかし、誤った使用をすると、例えば、子供が眼鏡で遊ぶか又は眼鏡脚部が必要以上の外力を受けて、眼鏡脚部の展開角度がプラスチック材料の許容範囲を超えると、眼鏡脚部が破損してユーザーが負傷するという安全性の問題が存在する。   Specialized 3D glasses for viewing 3D stereoscopic movies have been used since the 3D stereoscopic movies based on 3D images were released. The spectacle frame and the spectacle legs of the 3D spectacles are made of a thermoplastic plastic material, and such materials are hard and brittle and have a risk of cracking. The spectacle legs are hinged so that they can be folded at both ends of the spectacle frame. Normally, when used, the eyeglass legs on both sides of the eyeglass frame are expanded outward so that the eyeglass legs on both sides pass through the front part of the head and are put on the ear. However, if used incorrectly, for example, if a child plays with glasses or the spectacle legs receive excessive external force, and the spectacle legs expand beyond the allowable range of plastic material, the spectacle legs may be damaged. And there is a safety issue that users are injured.

本発明の目的は、眼鏡脚部の破損を防止する3D眼鏡安全構造を提供することである。   An object of the present invention is to provide a 3D spectacle safety structure that prevents breakage of spectacle legs.

前記目的を達成するため、本発明に係る3D眼鏡安全構造は、眼鏡フレーム及び2つの眼鏡脚部を備え、前記眼鏡フレームの両側には、それぞれ1つのピボットが設置され、2つの前記ピボットは2つの前記眼鏡脚部に軸連結し、前記眼鏡フレームのピボットの後方には支点が設置され、前記眼鏡脚部の一端には枢着部が設置され、前記枢着部は前記ピボットに軸連結する軸受を備え、前記軸受には開口が設けられ、前記開口の幅は前記ピボットの直径より小さく、前記軸受は弾性を有し、前記支点の位置は、前記眼鏡脚部の位置に対応する。   In order to achieve the above object, the 3D glasses safety structure according to the present invention includes a glasses frame and two glasses legs, one pivot is installed on each side of the glasses frame, and the two pivots are 2 A pair of eyeglass legs is connected to the shaft, a fulcrum is installed behind the pivot of the eyeglass frame, a pivot part is installed at one end of the glasses leg part, and the pivot part is connected to the pivot. An opening is provided in the bearing, the width of the opening is smaller than the diameter of the pivot, the bearing has elasticity, and the position of the fulcrum corresponds to the position of the eyeglass leg.

本発明の3D眼鏡安全構造において、眼鏡脚部の軸受は眼鏡フレームの連結部のピボットに着脱可能に軸連結されて、前記眼鏡脚部を正しく使用する場合、前記眼鏡脚部の軸受と前記連結部のピボットとの軸連結構造は安定であるが、前記眼鏡脚部が前記連結部の外側に向かう必要以上の外力を受けると、前記ピボットが前記眼鏡脚部の軸受から退出して、前記眼鏡脚部が前記連結部から離れ、前記眼鏡脚部が破損することによる安全性の問題を解消し、使用者が3D眼鏡を掛ける時の安全性を保証する。   In the 3D spectacle safety structure of the present invention, the spectacle leg bearing is detachably connected to the pivot of the spectacle frame connecting portion, and when the spectacle leg is used correctly, the spectacle leg bearing and the connection are connected. Although the shaft connection structure with the pivot of the part is stable, when the spectacle leg part receives an external force more than necessary toward the outside of the connection part, the pivot is retracted from the bearing of the spectacle leg part, This eliminates the safety problem caused by the leg part being separated from the connecting part and the spectacle leg part being damaged, and the safety when the user wears the 3D glasses is ensured.

本発明の実施形態に係る3D眼鏡安全構造を示す図である。It is a figure which shows 3D spectacles safety structure which concerns on embodiment of this invention. 図1に示す3D眼鏡安全構造の眼鏡脚部の枢着部分の分解図である。FIG. 2 is an exploded view of a pivoting portion of a spectacle leg portion of the 3D spectacle safety structure shown in FIG. 1. 図2に示す3D眼鏡安全構造の眼鏡脚部の枢着部分の断面図である。It is sectional drawing of the pivoting part of the spectacles leg part of 3D spectacles safety structure shown in FIG. 図1に示す3D眼鏡安全構造の眼鏡脚部を外側に向かって必要以上に展開した場合を示す図である。It is a figure which shows the case where the spectacles leg part of the 3D spectacles safety structure shown in FIG. 図1に示す3D眼鏡安全構造の眼鏡脚部が眼鏡フレームから離れることを示す図である。It is a figure which shows that the spectacles leg part of the 3D spectacles safety structure shown in FIG. 1 leaves | separates from a spectacles frame.

以下、図面を参照して、本発明の実施例について説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1は、本発明の実施形態に係る3D眼鏡安全構造を示す図である。前記3D眼鏡安全構造10は、眼鏡フレーム12及び2つの眼鏡脚部14を備える。   FIG. 1 is a diagram illustrating a 3D glasses safety structure according to an embodiment of the present invention. The 3D glasses safety structure 10 includes a glasses frame 12 and two glasses legs 14.

前記眼鏡フレーム12は、2つのレンズステー122及び2つの前記レンズステー122の両側に位置する連結部124を備える。前記レンズステー122は、レンズ(図示せず)を保持するために用いられる。前記眼鏡脚部14は、前記連結部124に折り畳み可能に連結される。前記眼鏡フレーム12の内側に向かって前記眼鏡脚部14を折り畳む場合、前記眼鏡脚部14は前記眼鏡フレーム12の内側に収容される。2つの前記眼鏡脚部14を展開して、使用者が眼鏡を掛ける場合、前記眼鏡脚部14は前記連結部124に制限されて、2つの前記眼鏡脚部14の間の距離はDであり、前記眼鏡脚部14は使用者の頭部に当接して耳に掛けられ、使用者の目は前記レンズステー122のレンズを介して3D立体映画を見ることができる。しかし、前記眼鏡脚部14が必要以上の外力を受けて前記眼鏡フレーム12の外側に向かってさらに展開される場合(図4を参照)、従来の眼鏡脚部は脆くて割れるか又は折れて、ユーザーが損傷するという安全性の問題が存在する。前記眼鏡脚部14は、前記眼鏡脚部14の両端に設置される枢着部142及び耳掛け部144を備え、前記枢着部142は、前記連結部124のピボット126に枢着され、前記耳掛け部144は、使用者が眼鏡を耳に掛けることに使用される。   The spectacle frame 12 includes two lens stays 122 and connecting portions 124 located on both sides of the two lens stays 122. The lens stay 122 is used to hold a lens (not shown). The spectacle leg 14 is foldably connected to the connecting portion 124. When the spectacle leg 14 is folded toward the inside of the spectacle frame 12, the spectacle leg 14 is accommodated inside the spectacle frame 12. When the user puts on the two spectacle legs 14 and puts on spectacles, the spectacle legs 14 are limited to the connecting part 124, and the distance between the two spectacle legs 14 is D. The eyeglass leg 14 is put on the ear in contact with the user's head, and the user's eyes can watch a 3D stereoscopic movie through the lens of the lens stay 122. However, when the spectacle leg 14 receives an external force more than necessary and is further expanded toward the outside of the spectacle frame 12 (see FIG. 4), the conventional spectacle leg is brittle and cracked or broken, There is a safety issue that damages the user. The spectacle leg 14 includes a pivot attaching part 142 and an ear hooking part 144 installed at both ends of the spectacle leg part 14, and the pivot attaching part 142 is pivotally attached to a pivot 126 of the connecting part 124. The ear hook 144 is used by the user to put the glasses on the ear.

図2に示されたように、前記枢着部142の末端には、軸孔1460及び開口1462が設けられ且つ弾性を有する軸受146が設置される。前記軸孔1460の孔径は、前記ピボット126の直径に対応し、前記開口1462は、前記軸孔1460に連通され且つ前記軸受146の前記連結部124に向かう片側に位置し、前記開口1462の幅は、前記ピボット126の直径より小さい。前記眼鏡脚部14の枢着部142を前記連結部124のピボット126に枢着させる場合、前記軸受146の開口1462の両側を前記ピボット126の外縁に当接させてから、前記軸受146を前記ピボット126に向かって押圧して、前記軸受146が弾性変形されることによって、前記軸受146の開口1462の幅が前記ピボット126の直径と等しくなると、前記ピボット126は前記開口1462から前記軸受146の内部に収容され、前記軸受146が弾性復帰して、前記開口1462の幅は前記ピボット126の直径より小さくなる(図3を参照)。前記眼鏡脚部14の軸受146と前記ピボット126との軸連結構造は、前記眼鏡脚部14が前記眼鏡フレーム12の連結部124から任意に離脱しないようにして、前記眼鏡脚部14は前記連結部124の内側に又は前記連結部124の外側に向かって動くことができる。前記軸受146を押圧して前記ピボット126に軸連結することができるので、前記眼鏡脚部14を前記眼鏡フレーム12に容易に装着することができ、且つコストを下げることができる。   As shown in FIG. 2, a shaft hole 1460 and an opening 1462 are provided at the end of the pivoting portion 142 and an elastic bearing 146 is installed. The diameter of the shaft hole 1460 corresponds to the diameter of the pivot 126, and the opening 1462 communicates with the shaft hole 1460 and is located on one side of the bearing 146 toward the connecting portion 124, and the width of the opening 1462 Is smaller than the diameter of the pivot 126. When pivoting portion 142 of the spectacle leg portion 14 is pivotally attached to the pivot 126 of the connecting portion 124, both sides of the opening 1462 of the bearing 146 are brought into contact with the outer edge of the pivot 126, and then the bearing 146 is When the width of the opening 1462 of the bearing 146 becomes equal to the diameter of the pivot 126 by being pressed toward the pivot 126 and elastically deforming the bearing 146, the pivot 126 is moved from the opening 1462 to the bearing 146. Housed inside, the bearing 146 is elastically restored, and the width of the opening 1462 becomes smaller than the diameter of the pivot 126 (see FIG. 3). The shaft connection structure of the bearing 146 of the spectacle leg 14 and the pivot 126 is such that the spectacle leg 14 does not arbitrarily separate from the connection 124 of the spectacle frame 12, and the spectacle leg 14 is connected with the connection. It can move inside the part 124 or towards the outside of the connecting part 124. Since the bearing 146 can be pressed and axially connected to the pivot 126, the spectacle leg portion 14 can be easily attached to the spectacle frame 12, and the cost can be reduced.

前記連結部124における前記ピボット126の後方には、突出された支点128が設置される。前記眼鏡脚部14が前記連結部124の外側に向かって最大範囲まで動いた時に、前記支点128は、眼鏡脚部14の外側面に当接される。本発明の3D眼鏡安全構造10において、前記眼鏡脚部14はてこと見なされ、前記支点128は、作用点である前記枢着部142と力点である前記耳掛け部144との間に位置する。前記眼鏡脚部14の耳掛け部144から前記支点128までの距離は、前記眼鏡脚部14の枢着部142から前記支点128までの距離より長いので、てこの原理によって、力点である前記耳掛け部144に前記連結部124の外側に向かう必要以上の外力を加えると、作用点である前記枢着部142で得られる前記連結部124の内側に向かう作用力は、前記耳掛け部144に加える外力より大きく、前記枢着部142は前記連結部124の内側に向かって動き、前記軸受146が弾性変形され、前記軸受146の開口1462の幅が前記ピボット126の直径と等しくなると、前記ピボット126が前記枢着部142の軸受146から退出して、前記眼鏡脚部14が前記連結部124から離れ(図5を参照)、従って前記耳掛け部144に加える必要以上の外力によって前記眼鏡脚部14に生じる応力を除去することができ、前記眼鏡脚部14が破損することによる安全性の問題を解消できる。   A protruding fulcrum 128 is installed behind the pivot 126 in the connecting portion 124. When the spectacle leg 14 moves to the maximum range toward the outside of the connecting portion 124, the fulcrum 128 is brought into contact with the outer surface of the spectacle leg 14. In the 3D spectacle safety structure 10 of the present invention, the spectacle leg portion 14 is regarded as a lever, and the fulcrum 128 is located between the pivoting portion 142 that is an action point and the ear hook portion 144 that is a power point. . The distance from the ear hooking portion 144 of the spectacle leg 14 to the fulcrum 128 is longer than the distance from the pivoting portion 142 of the spectacle leg 14 to the fulcrum 128. When an external force more than necessary toward the outside of the connecting portion 124 is applied to the hanging portion 144, the acting force toward the inside of the connecting portion 124 obtained by the pivoting portion 142, which is an action point, is applied to the ear hanging portion 144. When the pivoting portion 142 moves toward the inside of the connecting portion 124, the bearing 146 is elastically deformed, and the width of the opening 1462 of the bearing 146 becomes equal to the diameter of the pivot 126. 126 retreats from the bearing 146 of the pivoting portion 142, and the spectacle leg portion 14 moves away from the connecting portion 124 (see FIG. 5), and thus the ear hook portion 144. Can be removed stress generated in the glasses leg 14 by undue external force added, can be overcome safety issues caused by the spectacle legs 14 may be damaged.

本発明の3D眼鏡安全構造10において、前記眼鏡脚部14の軸受146は前記連結部124のピボット126に着脱可能に軸連結されて、前記眼鏡脚部14を正しく使用する場合、前記眼鏡脚部14の軸受146と前記連結部124のピボット126との軸連結構造は安定であるが、前記眼鏡脚部14が前記連結部124の外側に向かう必要以上の外力を受けると、前記ピボット126が前記眼鏡脚部14の軸受146から退出して、前記眼鏡脚部14が前記連結部124から離れ、前記眼鏡脚部14が破損することによる安全性の問題を解消し、使用者が3D眼鏡を掛ける時の安全性を保証する。   In the 3D spectacle safety structure 10 according to the present invention, the bearing 146 of the spectacle leg portion 14 is detachably connected to the pivot 126 of the connecting portion 124 so that the spectacle leg portion can be used when the spectacle leg portion 14 is used correctly. The shaft connection structure between the bearings 146 and the pivot 126 of the connecting portion 124 is stable. However, when the spectacle leg portion 14 receives an external force more than necessary toward the outside of the connecting portion 124, the pivot 126 is Retracting from the bearing 146 of the spectacle leg 14, the spectacle leg 14 is separated from the connecting part 124, and the safety problem due to the breakage of the spectacle leg 14 is solved, and the user wears 3D glasses. Guarantee the safety of time.

以上、本発明を実施例に基づいて具体的に説明したが、本発明は、上述の実施例に限定されるものではなく、その要旨を逸脱しない範囲において、種々の変更が可能であることは勿論であって、本発明の保護範囲は、以下の特許請求の範囲から決まる。   Although the present invention has been specifically described above based on the embodiments, the present invention is not limited to the above-described embodiments, and various modifications can be made without departing from the scope of the invention. Of course, the protection scope of the present invention is determined from the following claims.

10 3D眼鏡安全構造
12 眼鏡フレーム
14 眼鏡脚部
122 レンズステー
124 連結部
126 ピボット
128 支点
142 枢着部
144 耳掛け部
146 軸受
1460 軸孔
1462 開口
10 3D spectacle safety structure 12 spectacle frame 14 spectacle leg portion 122 lens stay 124 connection portion 126 pivot 128 fulcrum 142 pivot attachment portion 144 ear hook portion 146 bearing 1460 shaft hole 1462 opening

Claims (7)

眼鏡フレーム及び2つの眼鏡脚部を備える3D眼鏡安全構造であって、
前記眼鏡フレームの両側には、それぞれ1つのピボットが設置され、2つの前記ピボットは2つの前記眼鏡脚部に軸連結し、前記眼鏡フレームのピボットの後方には支点が設置され、
前記眼鏡脚部の一端には枢着部が設置され、前記枢着部は前記ピボットに軸連結する軸受を備え、前記軸受には開口が設けられ、前記開口の幅は前記ピボットの直径より小さく、前記軸受は弾性を有し、前記支点の位置は、前記眼鏡脚部の位置に対応することを特徴とする3D眼鏡安全構造。
A 3D glasses safety structure comprising a glasses frame and two glasses legs,
One pivot is installed on each side of the spectacle frame, the two pivots are axially connected to the two spectacle legs, and a fulcrum is installed behind the pivot of the spectacle frame,
One end of the spectacle leg is provided with a pivot part, and the pivot part includes a bearing that is connected to the pivot. The bearing has an opening, and the width of the opening is smaller than the diameter of the pivot. The 3D glasses safety structure, wherein the bearing has elasticity, and the position of the fulcrum corresponds to the position of the glasses leg.
前記眼鏡フレームは、2つのレンズステー及び2つの前記レンズステーの両側に位置する2つの連結部を備え、前記ピボット及び前記支点は前記連結部に設置されることを特徴とする請求項1に記載の3D眼鏡安全構造。   The eyeglass frame includes two lens stays and two connecting portions located on both sides of the two lens stays, and the pivot and the fulcrum are installed on the connecting portion. 3D glasses safety structure. 前記眼鏡脚部が前記連結部の外側に向かって動く時、前記支点は前記眼鏡脚部の外側に当接することを特徴とする請求項2に記載の3D眼鏡安全構造。   The 3D glasses safety structure according to claim 2, wherein the fulcrum contacts the outside of the spectacle leg when the spectacle leg moves toward the outside of the connecting portion. 前記眼鏡脚部の他端には耳掛け部が設置されることを特徴とする請求項1から3のいずれか一項に記載の3D眼鏡安全構造。   The 3D glasses safety structure according to any one of claims 1 to 3, wherein an ear hook is installed at the other end of the spectacle legs. 前記支点は、前記眼鏡脚部の枢着部と耳掛け部との間に位置することを特徴とする請求項4に記載の3D眼鏡安全構造。   5. The 3D glasses safety structure according to claim 4, wherein the fulcrum is located between a pivoting portion and an ear hooking portion of the spectacle legs. 前記支点から前記耳掛け部までの距離は、前記支点から前記枢着部までの距離より長いことを特徴とする請求項5に記載の3D眼鏡安全構造。   The 3D glasses safety structure according to claim 5, wherein a distance from the fulcrum to the ear hook is longer than a distance from the fulcrum to the pivot attachment. 前記軸受は軸孔を備え、前記軸孔の孔径は、前記ピボットの直径と等しく、前記軸孔及び前記開口は連通されることを特徴とする請求項1から6のいずれか一項に記載の3D眼鏡安全構造。   The said bearing is provided with the shaft hole, The hole diameter of the said shaft hole is equal to the diameter of the said pivot, The said shaft hole and the said opening are connected, The one of Claim 1 to 6 characterized by the above-mentioned. 3D glasses safety structure.
JP2012134590A 2011-06-30 2012-06-14 Three-dimensional-spectacle safety structure Pending JP2013017168A (en)

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